@article{BD99,
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  title={Optimal error Estimates for the Stokes and Navier-Stokes equations with slip-boundary condition},
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}

@Inbook{Benner2011,
  author="P. Benner and L. Feng",
  editor="P. Benner and M. Hinze and , E. J. W. ter Maten",
  title="{Recycling Krylov Subspaces for Solving Linear Systems with Successively Changing Right-hand Sides Arising in Model Reduction}",
  bookTitle="{Model Reduction for Circuit Simulation}",
  year="2011",
  publisher="{Springer Netherlands}",
  address="Dordrecht",
  pages="125--140",
  isbn="978-94-007-0089-5",
  doi="10.1007/978-94-007-0089-5_6",
  url="http://dx.doi.org/10.1007/978-94-007-0089-5_6"
}

@article{BW13,
  author = {S. Basting and M. Weismann},
  title = {A hybrid level set–front tracking finite element approach for fluid–structure interaction and two-phase flow applications },
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  year = {2013},
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  url = {http://dx.doi.org/10.1016/j.jcp.2013.08.018}
}

@book{Craig04,
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  title = {Introduction to Robotics},
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}

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  publisher = {Society for Industrial and Applied Mathematics},
  address = {Philadelphia, PA, USA}
}

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  author = "J. L. Guermond and P. Minev and J. Shen",
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  volume = "195",
  number = "44–47",
  pages = "6011 - 6045",
  year = "2006",
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  doi = "http://dx.doi.org/10.1016/j.cma.2005.10.010",
  url = "http://www.sciencedirect.com/science/article/pii/S0045782505004640",
  keywords = "Navier–Stokes equations",
  keywords = "Projection methods",
  keywords = "Fractional step methods",
  keywords = "Incompressibility",
  keywords = "Finite elements",
  keywords = "Spectral approximations ",
  abstract = "A series of numerical issues related to the analysis and implementation of fractional step methods for incompressible flows are addressed in this paper. These methods are often referred to in the literature as projection methods, and can be classified into three classes, namely the pressure-correction methods, the velocity-correction methods, and the consistent splitting methods. For each class of schemes, theoretical and numerical convergence results available in the literature are reviewed and open questions are discussed. The essential results are summarized in a table which could serve as a useful reference to numerical analysts and practitioners. "
}

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@inproceedings{Krasnopolsky10,
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  year      = {2010},
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  timestamp = {Thu, 21 May 2015 17:35:10 +0200},
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  bibsource = {dblp computer science bibliography, http://dblp.org}
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@article{KreutzerHWFB13,
  author    = {Moritz Kreutzer and
               Georg Hager and
               Gerhard Wellein and
               Holger Fehske and
               Alan R. Bishop},
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               {SIMD} units},
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  volume    = {abs/1307.6209},
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  timestamp = {Wed, 07 Jun 2017 14:40:28 +0200},
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@book{Meister2015,
  author = {A. Meister},
  title = {Numerik linearer Gleichungssysteme},
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  edition = {5th},
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@phdthesis{Metsch:2013,
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  school = {Institut f\"ur Numerische Simulation, Universit\"{a}t Bonn},
  year = {2013},
  annote = {INSdiss,thesis},
  type = {Dissertation},
  month = jul,
  http_pdf = {http://wissrech.ins.uni-bonn.de/research/pub/metsch/dissertation_metsch.pdf 1}
}

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@article {NLA:NLA1808,
author = {Ghysels, P. and K\l{}osiewicz, P. and Vanroose, W.},
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url = {http://dx.doi.org/10.1002/nla.1808},
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@book{NW06,
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@article{PR69,
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  number = {R1},
  pages = {35-43},
  publisher = {EDP Sciences},
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  year = {1969}
}

@article{Rum96,
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@article{RT92,
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@book{Saad03,
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@article{Sleijpen1993,
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  keywords = {Bi-conjugate gradients; non-symmetric linear systems; iterative solvers; GMRES; Krylov subspace; Bi-CGSTAB algorithm; convergence},
  language = {eng},
  pages = {11-32},
  publisher = {Kent State University, Department of Mathematics and Computer Science},
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@article{Wittmann13,
  author    = {Markus Wittmann and
               Georg Hager and
               Thomas Zeiser and
               Gerhard Wellein},
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